import type { AnyNode, AnyNodeId, RoofNode, RoofSegmentNode, RoofWallFaceId, } from '@pascal-app/core' import { getMaxRoofRectHeightFromAnchor, getMaxRoofRectWidthFromAnchor, getRoofSegmentWallFace, roofFacePointToSegment, } from '@pascal-app/core' /** * Host-side helpers for openings (door / window) hosted on a roof-segment * wall face: resize-handle limits derived from the face profile, and the * plan-space anchors the 2D floor-plan move path needs. Hosted children * store FACE-LOCAL coords ([u, v, z-from-mid-plane]) + `roofFace`. */ type RoofHostedOpening = { roofSegmentId?: string roofFace?: RoofWallFaceId parentId: string | null position: [number, number, number] width: number height: number } type SceneReader = { get: (id: AnyNodeId) => unknown } function resolveHostFace(node: RoofHostedOpening, scene: SceneReader) { if (!(node.roofSegmentId && node.roofFace)) return null const segment = scene.get(node.roofSegmentId as AnyNodeId) as RoofSegmentNode | undefined if (!segment || segment.type !== 'roof-segment') return null return { segment, face: getRoofSegmentWallFace(segment, node.roofFace) } } /** * Resize-handle width limit for a roof-hosted opening: the opposite edge * is anchored, `growSign` (+1 = door-local +X arrow) is the direction * the dragged edge moves. Null when the node is not roof-hosted. */ export function readRoofFaceWidthMax( node: RoofHostedOpening, scene: SceneReader, growSign: number, ): number | null { const host = resolveHostFace(node, scene) if (!host) return null const anchorU = node.position[0] - (growSign * node.width) / 2 return getMaxRoofRectWidthFromAnchor(host.face, anchorU, growSign, node.position[1], node.height) } /** * Resize-handle height limit for a roof-hosted opening. `growSign` +1 = * bottom edge anchored, top grows up; -1 = top anchored, bottom grows * down. Null when the node is not roof-hosted. */ export function readRoofFaceHeightMax( node: RoofHostedOpening, scene: SceneReader, growSign: number, ): number | null { const host = resolveHostFace(node, scene) if (!host) return null const anchorV = node.position[1] - (growSign * node.height) / 2 return getMaxRoofRectHeightFromAnchor(host.face, node.position[0], node.width, anchorV, growSign) } /** * Level hosting a roof-hosted opening's roof (opening → segment → roof → * level). Null when the parent chain isn't roof-shaped. */ export function getRoofHostedOpeningLevelId( node: { parentId: string | null }, nodes: Record, ): AnyNodeId | null { const segment = node.parentId ? nodes[node.parentId] : undefined if (segment?.type !== 'roof-segment') return null const roof = segment.parentId ? nodes[segment.parentId] : undefined if (roof?.type !== 'roof') return null return (roof.parentId as AnyNodeId | null) ?? null } /** * Level-plan [x, z] of a roof-hosted node — its face-local center mapped * through the face frame, then composed through the segment's and roof's * yaw + position. */ export function getRoofHostedOpeningPlanPoint( node: { parentId: string | null roofFace?: RoofWallFaceId position: [number, number, number] }, nodes: Record, ): [number, number] | null { const segment = node.parentId ? (nodes[node.parentId] as RoofSegmentNode | undefined) : undefined if (segment?.type !== 'roof-segment' || !node.roofFace) return null const roof = segment.parentId ? (nodes[segment.parentId] as RoofNode | undefined) : undefined if (roof?.type !== 'roof') return null const rotate = (x: number, z: number, yaw: number): [number, number] => [ x * Math.cos(yaw) + z * Math.sin(yaw), -x * Math.sin(yaw) + z * Math.cos(yaw), ] const segLocal = roofFacePointToSegment(segment, node.roofFace, [ node.position[0], node.position[1], node.position[2], ]) const [sx, sz] = rotate(segLocal[0], segLocal[2], segment.rotation ?? 0) const segX = sx + segment.position[0] const segZ = sz + segment.position[2] const [rx, rz] = rotate(segX, segZ, roof.rotation ?? 0) return [rx + roof.position[0], rz + roof.position[2]] }